Ramsey A J, Russell L C, Whitt S R, Chinkers M
Department of Pharmacology, University of South Alabama, Mobile, Alabama 36688, USA.
J Biol Chem. 2000 Jun 9;275(23):17857-62. doi: 10.1074/jbc.M001625200.
The sequential binding of different tetratricopeptide repeat (TPR) proteins to heat shock protein 90 (hsp90) is essential to its chaperone function in vivo. We have previously shown that three basic residues in the TPR domain of PP5 are required for binding to the acidic C-terminal domain of hsp90. We have now tested which acidic residues in this C-terminal domain are required for binding to three different TPR proteins as follows: PP5, FKBP52, and Hop. Mutation of Glu-729, Glu-730, and Asp-732 at the C terminus of hsp90 interfered with binding of all three TPR proteins. Mutation of Glu-720, Asp-722, Asp-723, and Asp-724 inhibited binding of FKBP52 and PP5 but not of Hop. Mutation of Glu-651 and Asp-653 did not affect binding of FKBP52 or PP5 but inhibited both Hop binding and hsp90 chaperone activity. We also found that a conserved Lys residue required for PP5 binding to hsp90 was critical for the binding of FKBP52 but not for the binding of Hop to hsp90. These results suggest distinct but overlapping binding sites on hsp90 for different TPR proteins and indicate that the binding site for Hop, which is associated with hsp90 in intermediate stages of protein folding, overlaps with a site of chaperone activity.
不同的四肽重复序列(TPR)蛋白与热休克蛋白90(hsp90)的顺序结合对其在体内的伴侣功能至关重要。我们之前已经表明,PP5的TPR结构域中的三个碱性残基是与hsp90的酸性C末端结构域结合所必需的。我们现在测试了该C末端结构域中的哪些酸性残基对于与三种不同的TPR蛋白结合是必需的,如下所示:PP5、FKBP52和Hop。hsp90 C末端的Glu-729、Glu-730和Asp-732突变干扰了所有三种TPR蛋白的结合。Glu-720、Asp-722、Asp-723和Asp-724突变抑制了FKBP52和PP5的结合,但不影响Hop的结合。Glu-651和Asp-653突变不影响FKBP52或PP5的结合,但抑制了Hop的结合以及hsp90的伴侣活性。我们还发现,PP5与hsp90结合所需的一个保守赖氨酸残基对于FKBP52的结合至关重要,但对于Hop与hsp90的结合并不关键。这些结果表明hsp90上不同TPR蛋白有不同但重叠的结合位点,并表明在蛋白质折叠中间阶段与hsp90相关的Hop的结合位点与伴侣活性位点重叠。